How to Fight Kinetics in Complex Radical Polymerization Processes: Theoretical Case Study of Poly(divinyl ether‐alt‐maleic anhydride)

Author:

Bolshchikov Boris D.1ORCID,Tsvetkov Vladimir B.1234ORCID,Alikhanova Olga L.15,Serbin Alexander V.15

Affiliation:

1. Polyelectrolytes and Biomedical Polymers Laboratory A.V. Topchiev Institute of Petrochemical Synthesis RAS, Leninsky prospect, 29 Moscow 119991 Russia

2. Department of Molecular VirologyFSBI Research Institute of Influenza Ministry of Health of the Russian Federation Professor Popov Street 15/17 Saint Petersburg 197376 Russia

3. Federal Research and Clinical Centre of Physical‐Chemical Medicine Federal Medical Biological Agency Malaya Pirogovskaya 1a Moscow 119435 Russia

4. Computational Oncology Group I.M. Sechenov First Moscow State Medical University Trubetskaya Str. 8‐2 119991 Moscow Russia

5. Research Center for Biomodulators and Drugs Health Research and Development Foundation Admiral Ushakov Boulevard 14–209 Moscow 117042 Russia

Publisher

Wiley

Subject

Materials Chemistry,Organic Chemistry,Polymers and Plastics,Physical and Theoretical Chemistry,Condensed Matter Physics

Reference85 articles.

1. Cyclopolymerization

2. The DVEMAN are also known under diverse names including DIVEMA Pyran copolymer Pyran Pyran XA 124‐177 MVE‐1/2/4 CCRIS 4292 NSC 59196 etc. (>100 synonyms https://pubchem.ncbi.nlm.nih.gov/compound/Divema#section=Depositor‐Supplied‐Synonyms). Majority of those were applied not only for pure anhydride products yielded directly but also for acidic derivatives the water‐soluble hydrolyzates promoted as biologically active preparations. For clarity and avoiding misleading we use the abbreviation DVEMAN implying the direct anhydride products exclusively.

3. Water Soluble Polymers for Pharmaceutical Applications

4. Interferon and Its Inducers—A Never-Ending Story: “Old” and “New” Data in a New Perspective

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